首页> 外文期刊>Indian Journal of Biochemistry & Biophysics >Identification of the elongation factor Tu binding site on 70S E. coli ribosomes by chemical crosslinking
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Identification of the elongation factor Tu binding site on 70S E. coli ribosomes by chemical crosslinking

机译:通过化学交联鉴定70S大肠杆菌核糖体上的延伸因子Tu结合位点

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摘要

Elongation factor Tu (EF-Tu), in the presence of Phe-tRNA, GMPPCP, and Poly (U), binds to 70S ribosomes at the recognition (R) site. In order to identify the ribosomal proteins adjacent to the EF-Tu occupying the R site, EF-Tu:Phe-tRNA:GMPPCP:ribosome complexes were crosslinked by modification with 2-iminothiolane and mild oxidation to form disulfide bridges between neighbouring proteins whose endogenous or introduced SH groups were appropriately located. The binding of Phe-tRNA to the ribosome was shown to be largely dependent on the presence of Poly (U). The total protein from the complexes was extracted and separated by two-dimensional gel electrophoresis by non-equilibrium pH gradient electrophoresis (NEpHGE) in the first dimension, followed by gradient SDS gel electrophoresis in the second dimension. Comparison of control samples crosslinked without Poly (U) to those crosslinked with Poly (U) present showed a single crosslinked complex in the region of the gel near EF-Tu. No cross-links in the vicinity of EF-Tu were visible in the absence of Poly (U). The crosslinked proteins in this region were recovered by electfoelution, radiolabeled and their identity was confirmed by 2D gel electrophoresis and immunoblot analyses. Two major 50S ribosomal proteins, L7/L12 and L10 were found to be covalently linked to EF-Tu. The isolated crosslinked complex did not contain any protein from the 30S subunit. These results demonstrate that L7/L12 and L10 are the major, if not only, ribosomal protein cross-links to EF-Tu in the R site. In contrast to previous crosslinking results obtained by others, our results define a unique location for the EF-Tu binding site, one compatible with functional data and near that of the EF-G binding site on the ribosome.
机译:在Phe-tRNA,GMPPCP和Poly(U)存在的情况下,延伸因子Tu(EF-Tu)在识别(R)位点与70S核糖体结合。为了鉴定与占据R位点的EF-Tu相邻的核糖体蛋白,通过用2-亚氨基硫杂环戊烷修饰并轻度氧化使EF-Tu:Phe-tRNA:GMPPCP:核糖体复合物交联,以形成内源性相邻蛋白之间的二硫键或引入的SH小组位置适当。已显示Phe-tRNA与核糖体的结合在很大程度上取决于Poly(U)的存在。从复合物中提取总蛋白,并通过二维凝胶电泳在第一维进行非平衡pH梯度电泳(NEpHGE),然后在第二维进行梯度SDS凝胶电泳。比较没有聚(U)交联的对照样品与存在的聚(U)交联的对照样品,在靠近EF-Tu的凝胶区域显示了一个单一的交联复合物。在没有聚(U)的情况下,在EF-Tu附近没有可见的交联。通过电洗脱回收该区域中的交联蛋白,进行放射性标记,并通过2D凝胶电泳和免疫印迹分析确认其身份。发现两种主要的50S核糖体蛋白L7 / L12和L10与EF-Tu共价连接。分离的交联复合物不包含来自30S亚基的任何蛋白质。这些结果表明,L7 / L12和L10是核糖体蛋白在R位点与EF-Tu交联的主要(即使不仅如此)。与其他人先前获得的交联结果相反,我们的结果定义了EF-Tu结合位点的唯一位置,一个与功能数据兼容且与核糖体上EF-G结合位点相近。

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